对映选择合成
化学
半胺
立体化学
全合成
烯胺
立体异构
胺气处理
结构母题
吲哚生物碱
吲哚试验
序列(生物学)
丙烯醛
级联
绝对构型
组合化学
药物发现
奥西多尔
手性(物理)
有机催化
作者
Satoshi Matsumiya,Yukine Mizukami,Akihiro Morita,Kazuma Hirata,Shinya Shiomi,Shota Tominaga,Noriyuki Kogure,Hiromitsu Takayama,Mariko Kitajima,Hayato Ishikawa
摘要
Hetero-oligomeric monoterpenoid indole alkaloids (MIAs), which possess unique three-dimensional architectures and relatively high molecular weights, are intriguing targets in drug discovery owing to their potential to disrupt protein-protein interactions. Herein, we describe the first enantioselective total syntheses of bisleuconothine A, a dimeric MIA, and bousigonine B, a trimeric MIA. The central element of our strategy is the concise construction of a chiral 3-ethylpiperidine scaffold, a common structural motif in MIAs. This key intermediate was prepared using a cascade sequence comprising an organocatalytic enantioselective Michael addition of a cyclic enamine to acrolein promoted by a chiral secondary amine catalyst, followed by hemiaminal cyclization and acetalization. Coupling of the aspidosperma- and eburnane-type fragments, both derived from this common intermediate, was accomplished via a biomimetic Friedel-Crafts-type reaction. The present total synthesis also revises the absolute stereochemistry of bousigonine B and constitutes the first total synthesis of a trimeric MIA.
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